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抑癌素对DNA聚合酶α的抑制机制。

Mechanism of DNA polymerase alpha inhibition by aphidicolin.

作者信息

Sheaff R, Ilsley D, Kuchta R

机构信息

Department of Chemistry and Biochemistry, University of Colorado, Boulder 80309-0215.

出版信息

Biochemistry. 1991 Sep 3;30(35):8590-7. doi: 10.1021/bi00099a014.

Abstract

Synthetic oligonucleotides of defined sequence were used to examine the mechanism of calf thymus DNA polymerase alpha inhibition by aphidicolin. Aphidicolin competes with each of the four dNTPs for binding to a pol alpha-DNA binary complex and thus should not be viewed as a dCTP analogue. Kinetic evidence shows that inhibition proceeds through the formation of a pol alpha.DNA.aphidicolin ternary complex, while DNase I protection experiments provide direct physical evidence. When deoxyguanosine is the next base to be replicated, Ki = 0.2 microM. In contrast, the Ki is 10-fold higher when the other dNMPs are at this position. Formation of a pol alpha.DNA.aphidicolin ternary complex did not inhibit the primase activity of the pol alpha.primase complex. Neither the rate of primer synthesis nor the size distribution of primers 2-10 nucleotides long was changed. Elongation of the primase-synthesized primers by pol alpha was inhibited both by ternary complex formation using exogenously added DNA and by aphidicolin alone.

摘要

使用特定序列的合成寡核苷酸来研究阿非科林对小牛胸腺DNA聚合酶α的抑制机制。阿非科林与四种脱氧核苷三磷酸(dNTP)中的每一种竞争结合到聚合酶α-DNA二元复合物上,因此不应被视为dCTP类似物。动力学证据表明,抑制作用是通过形成聚合酶α-DNA-阿非科林三元复合物来进行的,而脱氧核糖核酸酶I保护实验提供了直接的物理证据。当脱氧鸟苷是下一个要复制的碱基时,抑制常数(Ki)=0.2微摩尔。相比之下,当其他脱氧单磷酸核苷(dNMP)处于此位置时,Ki要高10倍。聚合酶α-DNA-阿非科林三元复合物的形成并未抑制聚合酶α-引发酶复合物的引发酶活性。引物合成速率和2至10个核苷酸长的引物的大小分布均未改变。使用外源添加的DNA形成三元复合物以及单独使用阿非科林均抑制了由引发酶合成的引物由聚合酶α进行的延伸。

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